JPH11138542A - Recycling device of waste cartridge - Google Patents

Recycling device of waste cartridge

Info

Publication number
JPH11138542A
JPH11138542A JP30426297A JP30426297A JPH11138542A JP H11138542 A JPH11138542 A JP H11138542A JP 30426297 A JP30426297 A JP 30426297A JP 30426297 A JP30426297 A JP 30426297A JP H11138542 A JPH11138542 A JP H11138542A
Authority
JP
Japan
Prior art keywords
waste
crushed
patrone
classifier
crusher
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP30426297A
Other languages
Japanese (ja)
Inventor
Tokuhito Kikuhara
得仁 菊原
Hidefumi Tsuboi
秀文 坪井
Yoshiki Togashi
義樹 冨樫
Masami Nakajima
政美 中島
Yoji Domeki
洋治 百目鬼
Takeshi Ishikawa
▲たけ▼志 石川
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hitachi Chemical Techno Plant Ltd
Resonac Corp
Original Assignee
Hitachi Chemical Co Ltd
Hitachi Chemical Techno Plant Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hitachi Chemical Co Ltd, Hitachi Chemical Techno Plant Ltd filed Critical Hitachi Chemical Co Ltd
Priority to JP30426297A priority Critical patent/JPH11138542A/en
Publication of JPH11138542A publication Critical patent/JPH11138542A/en
Pending legal-status Critical Current

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/52Mechanical processing of waste for the recovery of materials, e.g. crushing, shredding, separation or disassembly
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/62Plastics recycling; Rubber recycling

Landscapes

  • Separation, Recovery Or Treatment Of Waste Materials Containing Plastics (AREA)
  • Processing And Handling Of Plastics And Other Materials For Molding In General (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide the recycling device of waste cartridge, which can simultaneously and continuously process unnecessary waste cartridges or in which crushed cartridges are sorted by materials so as to classify sorted component materials in predetermined particle diameters are finally subject to a cleaning and drying process. SOLUTION: This recycling device is equipped with a crusher 2 for crushing waste cartridges, separators (magnetic separators 4 and 12) for separating crushed component materials and a classifier (a vibratory screening machine 6) for classifying the separated component material into predetermined particle diameters. Further, a cleaning device 9 for cleaning the classified component materials and a drier 10 for drying them are provided in the downstream side of the classifier (the vibratory screening machine 6).

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、回収された廃パト
ローネを破砕、分別、分級し、該分級した材料を洗浄及
び乾燥させ、リサイクル可能とする廃パトローネのリサ
イクル装置に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a device for recycling waste patrone, which crushes, separates, and classifies the collected waste patrone, and cleans and dries the classified material to make it recyclable.

【0002】[0002]

【従来の技術】写真撮影に使用されるカメラには、通常
35mmフィルムが使用され、該35mmフィルムは、
図4に示すように、フィルム36を巻き付けるプラスチ
ック製のスプール33と、該スプール33を収納する鉄
製の胴部34及びキャップ32、32とからなり、前記
胴部34のフィルム取り出し口部には、フェルト製の遮
光材35が取り付けられている。尚、フィルム34以外
の部分は、総称してパトローネ37と呼ばれている。
2. Description of the Related Art A camera used for photographing usually uses a 35 mm film.
As shown in FIG. 4, a plastic spool 33 around which a film 36 is wound, an iron body 34 and caps 32, 32 for accommodating the spool 33 are provided. A light shielding material 35 made of felt is attached. The parts other than the film 34 are collectively called a patrone 37.

【0003】撮影者は、撮影終了後にフィルムを現像所
に提出し、現像所では、パトローネ37からフィルム3
6を抜き取り、現像及びプリント処理を施す。使用済み
となった廃パトローネ37は、分解装置にて鉄製の部品
とプラスチック製の部品とに分別され、廃棄物として産
業廃棄物処理業者に引き渡される。
[0003] The photographer submits the film to the photo lab after the photographing is completed, and the photo film is sent from the patrone 37 to the photo lab.
6 is extracted and subjected to development and print processing. The used waste patrone 37 is separated into an iron part and a plastic part by a disassembly device and delivered to an industrial waste disposal company as waste.

【0004】ところで、近年においては、工業製品によ
る環境汚染、産業廃棄物の増加が大きな社会問題として
取り上げられており、廃パトローネ37に対しても厳し
い目が向けられている。そのため、廃パトローネ37の
鉄製部品は、再生鉄原料として、プラスチック製部品
は、再生ペレットの原料としてリサイクルを行うことが
望まれている。
[0004] In recent years, environmental pollution by industrial products and an increase in industrial waste have been taken up as major social problems, and severe attention has been paid to waste patrone 37. Therefore, it is desired that the iron parts of the waste patrone 37 be recycled as raw materials for recycled iron, and the plastic parts are recycled as raw materials for recycled pellets.

【0005】前述したパトローネ37の分解装置として
は、特開平5−64811号公報に記載されたものが知
られており、前記公報に記載の分解装置は、廃パトロー
ネ37の分解及び材質別の選別を自動的に行えるように
なっている。
[0005] As a device for disassembling the patrone 37 described above, there is known a device described in Japanese Patent Application Laid-Open No. 5-64811. The disassembling device described in the above publication disassembles the waste patrone 37 and sorts it by material. Can be automatically performed.

【0006】[0006]

【発明が解決しようとする課題】しかしながら、前述し
た公報に記載されている分解装置は、パトローネ37の
処理を1個づつ行うものであり、パトローネ37を整列
させる必要がある。更に、分別に至っては、鉄と非鉄を
分別するのみであり、非鉄製の破砕物を材質ごとに分別
することができないとの課題がある。
However, the disassembling apparatus described in the above-mentioned publication performs the processing of the patrone 37 one by one, and it is necessary to align the patrone 37. In addition, there is a problem that only separation of iron and non-ferrous metals is required for separation, and non-ferrous crushed materials cannot be separated for each material.

【0007】本発明は、前記課題に鑑み、不要となった
廃パトローネ37を一度に、且つ、連続的に処理可能で
あり、破砕後には、材質別に選別し、該選別した破砕物
を所定の粒径に分級し、洗浄、乾燥処理を行うことが可
能な廃パトローネ37のリサイクル装置を提供すること
を課題とする。
[0007] In view of the above problems, the present invention allows waste patrones 37 that are no longer needed to be treated at once and continuously. After crushing, the waste patrones 37 are sorted by material, and the sorted crushed materials are separated into predetermined materials. An object of the present invention is to provide a recycling apparatus for waste patrone 37 that can be classified into particle sizes, and can be washed and dried.

【0008】[0008]

【課題を解決するための手段】本発明は、図1に示すよ
うに、廃パトローネ37(図示省略)を破砕する破砕機
2と、破砕した破砕物を分別する分別機(磁選機4、1
2)と、分別した破砕物を所定の粒径に分級する分級機
(振動ふるい機6)とを備え、前記分級した破砕物を洗
浄及び乾燥させる洗浄装置9及び乾燥機10を前記分級
機(振動ふるい機6)の下流側に設けたことを特徴とす
る。
As shown in FIG. 1, the present invention comprises a crusher 2 for crushing waste patrone 37 (not shown) and a separator (magnetic separator 4, 1) for separating crushed crushed material.
2) and a classifier (vibrating sieve 6) for classifying the classified crushed material into a predetermined particle size, and a washing device 9 and a dryer 10 for washing and drying the classified crushed material are provided by the classifier ( It is characterized in that it is provided on the downstream side of the vibrating sieve 6).

【0009】[0009]

【発明の実施の形態】本発明に使用する破砕機2は、廃
パトローネ37を破砕可能なものであれば、せん段式、
スクリュー式等であってもかまわないが、破砕後の粒径
を考えると、被破砕物を高速回転する複数の打撃部材に
より破砕する、竜巻式が好ましい。
BEST MODE FOR CARRYING OUT THE INVENTION The crusher 2 used in the present invention is a stepped type as long as it can crush waste patrone 37.
Although a screw type or the like may be used, in consideration of the particle size after crushing, a tornado type in which the object to be crushed is crushed by a plurality of impact members rotating at high speed is preferable.

【0010】本発明に使用する分別機は、鉄と非鉄とを
分別するものであり、図1には、磁選機4及び磁選機1
2として示している。鉄及び非鉄の選別は、磁石を利用
して行い、磁選機4では、破砕機2で破砕された直後の
破砕物を分別し、磁選機12では、後述する分級機を通
過させた後に、再度分別を行っている。前記2回の分別
は、破砕機2を通過した直後の1回のみであってもかま
わないが、リサイクルするための破砕物純度を上げる意
味で2回以上行うことが好ましい。
The separator used in the present invention separates ferrous and non-ferrous metals. FIG. 1 shows a magnetic separator 4 and a magnetic separator 1.
It is shown as 2. The separation of iron and non-ferrous metals is performed using a magnet. The magnetic separator 4 separates the crushed material immediately after being crushed by the crusher 2, and the magnetic separator 12 passes through a classifier described later and then again. We are sorting. The two-time separation may be performed only once immediately after passing through the crusher 2, but is preferably performed twice or more in order to increase the purity of the crushed material for recycling.

【0011】本発明の使用する所定の粒径に分級する分
級機は、破砕物の粒径を揃え、リサイクルを容易にする
ものであり、前記分級機の下流側に比重選別機を設置し
た場合には、集めるべきスプール33の破砕物から、ス
プール33に残存したフィルム36及び胴部34から脱
落した遮光材35の取り除きをも可能にするものであ
る。
The classifier for classifying to a predetermined particle size used in the present invention is for uniforming the particle size of the crushed material and facilitating recycling. When a specific gravity separator is installed downstream of the classifier. In this embodiment, it is also possible to remove the film 36 remaining on the spool 33 and the light shielding material 35 dropped from the body 34 from the crushed material of the spool 33 to be collected.

【0012】破砕機2により破砕された破砕物は、振動
ふるい機6により、リサイクルするには不向きな過小粒
径物を過小粒径回収品受17へ、過大粒径物を過大粒径
回収品受18へと選別され、リサイクルするのに適した
粒径物(約3〜7mm)のみを、比重選別機8へと送
る。該比重選別機8では、比重差により、材質の異なる
破砕物を的確に分別可能であり、スプール33の破砕物
から、フィルム36及び遮光材35を取り除くことがで
きる。
The crushed material crushed by the crusher 2 is passed through the vibrating sieving machine 6 to receive an undersized particle which is unsuitable for recycling into an undersized particle collection receiver 17 and to transfer the oversized particle to an oversized particle collected product. Only the particles (approximately 3 to 7 mm) which are sorted into the receiver 18 and suitable for recycling are sent to the specific gravity sorter 8. In the specific gravity sorter 8, crushed materials of different materials can be accurately separated by the difference in specific gravity, and the film 36 and the light shielding material 35 can be removed from the crushed material of the spool 33.

【0013】本発明に使用する洗浄装置9及び乾燥機1
0は、洗浄及び乾燥を行えるものであれば特に限定され
るものでないが、洗浄装置9としては、バスケットに被
洗浄物を入れ、水中で回転させるバレル方式、同じくバ
スケットに被洗浄物を入れ、水中で前後左右に揺動させ
る揺動方式及び螺旋状レールを有した筒体の中で洗浄を
行う螺旋式等の方法があり、中でも、螺旋式のものが、
構造が簡単であり、連続処理可能なことから好ましい。
The cleaning device 9 and the dryer 1 used in the present invention.
0 is not particularly limited as long as it can perform washing and drying, but as the washing device 9, a washing method in which the object to be washed is put in a basket and rotated in water, a barrel method, and the object to be washed is put in the basket, There are methods such as a oscillating method of oscillating back and forth and left and right in water and a helical method of washing in a cylinder having a helical rail.
This is preferable because the structure is simple and continuous processing is possible.

【0014】[0014]

【実施例】以下、本発明の実施例を図面に従い説明する
と、図1は本発明の実施例を示す廃パトローネ37のリ
サイクル装置であり、廃パトローネ37(図示省略)
は、投入ホッパー1から投入され、破砕機2に送られ
る。破砕機2の内部は、図2に示すようになっており、
筒状縦型のケーシング20内部に、回転軸21を垂設
し、該回転軸21に可撓性を有する複数本の打撃部材2
2を放射状に接続している。回転軸21の下方には、貫
通孔を有した回転板23が設置され、更にその下方に
は、羽根車24が放射状に設けてある。一方、ケーシン
グ20の内周壁には、打撃部材22の回転時に描く先端
軌跡近傍にまで***した突条26を複数周設している。
前述した回転板23と羽根車24の間には、貫通溝27
を有する粒径調整板25がケーシング20の内周面に取
り付けられており、該粒径調整板25は、貫通溝27の
幅を任意に設定可能にしている。
DESCRIPTION OF THE PREFERRED EMBODIMENTS An embodiment of the present invention will be described below with reference to the drawings. FIG. 1 shows a waste cartridge 37 recycling apparatus showing an embodiment of the present invention, and a waste cartridge 37 (not shown).
Is fed from the charging hopper 1 and sent to the crusher 2. The inside of the crusher 2 is as shown in FIG.
A rotating shaft 21 is provided vertically inside a cylindrical vertical casing 20, and the rotating shaft 21 has a plurality of flexible striking members 2.
2 are connected radially. A rotating plate 23 having a through hole is provided below the rotating shaft 21, and an impeller 24 is provided radially below the rotating plate 23. On the other hand, the inner peripheral wall of the casing 20 is provided with a plurality of ridges 26 protruding up to the vicinity of the tip trajectory drawn when the striking member 22 rotates.
A through groove 27 is provided between the rotating plate 23 and the impeller 24 described above.
Is attached to the inner peripheral surface of the casing 20, and the width of the through groove 27 can be set arbitrarily.

【0015】破砕機2に投入された廃パトローネ37
(図示省略)は、モータ28により回転(1000〜2
000rpm)する回転軸21に設けられた打撃部材2
2により破砕され、貫通溝27の幅よりも小さくなった
破砕物のみ、回転板23よりも下方に落下し収集され
る。破砕時に若干発生する微細な粒径の破砕物は、図1
に示す、サイクロン13を通してバグフィルタ14に補
足回収される。尚、本実施例では、竜巻式の破砕機2を
使用したが、前述したように、せん段式及びスクリュー
式の破砕機であっても、本発明に使用可能である。
Waste patrone 37 put into crusher 2
(Not shown) is rotated by the motor 28 (1000 to 2
Striking member 2 provided on the rotating shaft 21 that rotates at 000 rpm)
Only the crushed material that has been crushed by 2 and has become smaller than the width of the through groove 27 falls below the rotating plate 23 and is collected. The crushed material with a fine particle size generated slightly during crushing is shown in FIG.
And is collected and collected by the bag filter 14 through the cyclone 13 shown in FIG. In this embodiment, the tornado type crusher 2 is used. However, as described above, a crusher of a step type or a screw type can be used in the present invention.

【0016】破砕された廃パトローネ37は、磁選機4
へとフィーダ3により送られ、鉄製部品と非鉄製部品と
に大別される。前記鉄製部品は、この時点で、高い回収
率が得られるので、再生鉄原料として再利用可能であ
る。一方、非鉄製部品は、サイクロン5を介して、振動
ふるい機6に移送され、所定の粒径に分級される。ここ
での分級は、適正な大きさの破砕物、過小粒径(過小粒
径回収品受17の中)の破砕物及び過大粒径(過大粒径
回収品受18の中)の破砕物に分別され、前記過大粒径
回収品受18に分級されたものは、再度投入ホッパー1
から投入され、回収率を上げることが可能となる。
The crushed waste patrone 37 is supplied to the magnetic separator 4
And is roughly divided into ferrous parts and non-ferrous parts. At this point, a high recovery rate can be obtained from the iron parts, so that the iron parts can be reused as recycled iron raw materials. On the other hand, the non-ferrous parts are transferred to the vibrating sieve 6 via the cyclone 5 and classified into a predetermined particle size. The classification here is performed for crushed materials having an appropriate size, crushed materials having an undersized particle (in the undersized particle collection product receiver 17), and crushed products having an excessively large particle size (in the oversized particle collection product reception 18). The separated and classified into the excessively large particle size collected product receiver 18 is again put into the input hopper 1.
And the recovery rate can be increased.

【0017】分級後の回収品には、遮光材35及びフィ
ルム36(図4参照)といった、材質の異なるものが混
在しているため、材質の比重差を利用して選別を行な
う。該選別は、比重選別機8を使用して行われるもの
で、その方式は、底面に多数の孔を有した緩やかな傾斜
板に被選別物を乗せ、前記傾斜板の下方よりファン等に
より送風しながら、傾斜板事体を振動させることによ
り、比重の軽いものを傾斜板から脱落させ、比重の重い
ものを傾斜板に残す等の方法が用いられる。
Since the collected products after classification include materials having different materials such as a light-shielding material 35 and a film 36 (see FIG. 4), sorting is performed by utilizing a difference in specific gravity of the materials. The sorting is carried out by using a specific gravity sorter 8, in which the object to be sorted is placed on a gently inclined plate having a large number of holes on the bottom surface, and air is blown from below the inclined plate by a fan or the like. While the inclined plate body is vibrated, a method of dropping a material having a lower specific gravity from the inclined plate and leaving a material having a higher specific gravity on the inclined plate is used.

【0018】材質別に選別が済んだ後の回収品は、洗浄
装置9及び乾燥機10を通過して表面に付着した異物を
取り除かれる。前述した洗浄装置9及び乾燥機10は、
その要部を拡大した図3に示すように、螺旋式のものを
使用している。洗浄及び乾燥工程を図3を用いて説明す
ると、処理筒29内に水及び回収品を投入し、回転軸3
0を回転させることで、螺旋状レール31を回転させ、
常に水と回収品とを接触させながら洗浄を行う。その
後、同じく螺旋状レール31を有した乾燥機10にて、
連続的に回収物の乾燥を行う。洗浄装置9及び乾燥機1
0を通過した回収品は、図1に示す、フィーダ11を通
して再度磁選機12にて分別され、非鉄部品の純度を高
めている。
After being sorted by material, the collected product passes through a washing device 9 and a dryer 10 to remove foreign substances adhering to the surface. The cleaning device 9 and the dryer 10 described above include:
As shown in FIG. 3 in which the main part is enlarged, a spiral type is used. The washing and drying steps will be described with reference to FIG.
By rotating 0, the spiral rail 31 is rotated,
Washing is performed while always bringing water and the recovered product into contact. Then, in the dryer 10 also having the spiral rail 31,
Dry the recovered material continuously. Cleaning device 9 and dryer 1
The collected product that has passed through the filter 0 is separated again by the magnetic separator 12 through the feeder 11 shown in FIG. 1 to increase the purity of the non-ferrous parts.

【0019】図1に示す廃パトローネリサイクル装置に
より、主要な有価物を回収したところ、各材質の回収率
を、破砕前の廃パトローネ37に対する重量比で示す
と、鉄製部品の95パーセント以上、非鉄製部品である
スプール33は95パーセント程度回収でき、スプール
33の内、再生ペレットとして使用するために必要とさ
れる粒径(3〜7mm)の回収品は、86パーセントと
の高い回収率を得ることができた。また、回収品中に含
まれる他の材質(遮光材35、フィルム36等)の混入
率は、1パーセント未満であった。
When the main valuables were recovered by the waste patrone recycling apparatus shown in FIG. 1, the recovery rate of each material was expressed by the weight ratio to the waste patrone 37 before crushing, and more than 95% of the iron parts About 95% of the spool 33, which is an iron part, can be recovered. Of the spool 33, a recovered product having a particle size (3 to 7 mm) required for use as recycled pellets has a high recovery rate of 86%. I was able to. The mixing ratio of other materials (light shielding material 35, film 36, etc.) contained in the collected product was less than 1%.

【0020】[0020]

【発明の効果】本発明によれば、廃パトローネを一定量
単位で破砕、選別、分級及び洗浄処理を行うことによ
り、再生利用可能な材質の回収品純度を高く保ち、且
つ、粒径の揃った品質で得ることが可能となる。更に
は、比重選別機を使用することにより、より高い純度で
のリサイクル品回収が可能となる。
According to the present invention, waste patrone is crushed, sorted, classified, and washed in a fixed amount to maintain a high purity of the recycled material and a uniform particle size. Quality can be obtained. Furthermore, by using a specific gravity sorter, it is possible to collect recycled products with higher purity.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明の実施例である、廃パトローネのリサイ
クル装置の概略図を示す。
FIG. 1 is a schematic view of an apparatus for recycling waste patrone, which is an embodiment of the present invention.

【図2】本発明に使用する竜巻式破砕機の縦断面図を示
す。
FIG. 2 is a longitudinal sectional view of a tornado crusher used in the present invention.

【図3】本発明に使用する螺旋式洗浄装置と乾燥機の要
部拡大図を示す。
FIG. 3 is an enlarged view of a main part of a spiral cleaning device and a dryer used in the present invention.

【図4】パトローネの分解斜視図を示す。FIG. 4 is an exploded perspective view of the patrone.

【符号の説明】[Explanation of symbols]

1.投入ホッパー 2.破砕機 3.フィーダ 4.磁
選機 5.サイクロン 6.振動ふるい機 7.フィーダ 8.比重選別機
9.洗浄装置 10.乾燥機 11.フィーダ 12.
磁選機 13.サイクロン 14.バグフィルタ 15.ブロワ 16.鉄製部品受 17.過小粒径回収
品受 18.過大粒径回収品受 19.所定粒径回収品
受 20.ケーシング 21.回転軸 22.打撃部材
23.回転板 24.羽根車 25.粒径調整板 2
6.突条 27.貫通溝 28.モータ 29.処理筒
30.回転軸 31.螺旋状レール 32.キャップ
33.スプール 34.胴部 35.遮光材 36.
フィルム 37.パトローネ
1. Input hopper 2. Crusher 3. Feeder 4. Magnetic separator 5. Cyclone 6. Vibrating sieve machine 7. Feeder 8. Specific gravity sorter
9. Cleaning device 10. Dryer 11. Feeder 12.
Magnetic separator 13. Cyclone 14. Bag filter 15. Blower 16. Steel parts receiving 17. Receiving an undersized particle collection product 18. Receiving an oversized particle collection product 19. Receiving specified particle size collection product 20. Casing 21. Rotation axis 22. Hitting member 23. Rotating plate 24. Impeller 25. Particle size adjustment plate 2
6. Ridge 27. Through groove 28. Motor 29. Processing cylinder 30. Rotation axis 31. Spiral rail 32. Cap 33. Spool 34. Torso 35. Light shielding material 36.
Film 37. Patrone

───────────────────────────────────────────────────── フロントページの続き (72)発明者 冨樫 義樹 茨城県下館市大字小川1425番地 日立化成 テクノプラント株式会社内 (72)発明者 中島 政美 茨城県下館市大字小川1425番地 日立化成 テクノプラント株式会社内 (72)発明者 百目鬼 洋治 茨城県下館市大字小川1425番地 日立化成 テクノプラント株式会社内 (72)発明者 石川 ▲たけ▼志 茨城県下館市大字小川1425番地 日立化成 テクノプラント株式会社内 ──────────────────────────────────────────────────続 き Continuing on the front page (72) Inventor Yoshiki Togashi 1425 Ogawa, Oji, Shimodate, Ibaraki Prefecture Inside Hitachi Chemical Technoplant Co., Ltd. (72) Inventor Yoji Hyakumeki 1425 Ogawa, Shimodate-shi, Ibaraki Prefecture Within Hitachi Chemical Technoplant Co., Ltd. (72) Inventor 1425 Ogawa Ogawa, Shimodate-shi, Ibaraki Hitachi Chemical Technoplant Co., Ltd.

Claims (4)

【特許請求の範囲】[Claims] 【請求項1】 廃パトローネを破砕する破砕機と、破砕
した破砕物を分別する分別機と、分別した破砕物を所定
の粒径に分級する分級機とを備え、前記分級した破砕物
を洗浄及び乾燥させる洗浄装置及び乾燥機を前記分級機
の下流側に設けたことを特徴とする廃パトローネのリサ
イクル装置。
1. A crusher for crushing waste patrone, a separator for separating the crushed crushed material, and a classifier for classifying the crushed crushed material to a predetermined particle size, and washing the classified crushed material. And a washing device for drying and a dryer provided downstream of the classifier.
【請求項2】 破砕機が、竜巻式のものであることを特
徴とする請求項1に記載の廃パトローネのリサイクル装
置。
2. The waste cartridge recycling apparatus according to claim 1, wherein the crusher is of a tornado type.
【請求項3】 洗浄装置が、螺旋式のものであることを
特徴とする請求項1又は2に記載の廃パトローネのリサ
イクル装置。
3. The apparatus for recycling waste cartridges according to claim 1, wherein the cleaning apparatus is a spiral type.
【請求項4】 分級機が、振動ふるい機であり、且つ、
前記振動ふるい機と洗浄装置との間に比重選別機を配設
することを特徴とする請求項1、2又は3に記載の廃パ
トローネのリサイクル装置。
4. The classifier is a vibrating sieve, and
4. The apparatus for recycling waste cartridges according to claim 1, wherein a specific gravity separator is disposed between the vibrating screener and the washing apparatus.
JP30426297A 1997-11-06 1997-11-06 Recycling device of waste cartridge Pending JPH11138542A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP30426297A JPH11138542A (en) 1997-11-06 1997-11-06 Recycling device of waste cartridge

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP30426297A JPH11138542A (en) 1997-11-06 1997-11-06 Recycling device of waste cartridge

Publications (1)

Publication Number Publication Date
JPH11138542A true JPH11138542A (en) 1999-05-25

Family

ID=17930942

Family Applications (1)

Application Number Title Priority Date Filing Date
JP30426297A Pending JPH11138542A (en) 1997-11-06 1997-11-06 Recycling device of waste cartridge

Country Status (1)

Country Link
JP (1) JPH11138542A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103802232A (en) * 2014-01-28 2014-05-21 青岛新天地固体废物综合处置有限公司 Production line for cleaning, sorting, modifying and pelleting waste plastics and corresponding technology
JP2016153188A (en) * 2015-02-20 2016-08-25 宇部興産株式会社 Preliminary-treatment method for obtaining material for producing regenerated thermoplastic resin molding from crushed product of waste substance of thermoplastic resin molding
JP2019089007A (en) * 2017-11-10 2019-06-13 Jfeスチール株式会社 Sorting and recovering method and facility for valuable substance from waste material

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103802232A (en) * 2014-01-28 2014-05-21 青岛新天地固体废物综合处置有限公司 Production line for cleaning, sorting, modifying and pelleting waste plastics and corresponding technology
JP2016153188A (en) * 2015-02-20 2016-08-25 宇部興産株式会社 Preliminary-treatment method for obtaining material for producing regenerated thermoplastic resin molding from crushed product of waste substance of thermoplastic resin molding
JP2019089007A (en) * 2017-11-10 2019-06-13 Jfeスチール株式会社 Sorting and recovering method and facility for valuable substance from waste material

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